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Trace element geochemistry and mineralogy of coal from Samaleswari open cast coal block (S-OCB), Eastern India

机译:来自印度东部Samaleswari开放式铸造煤炭块煤的痕量元素地球化学与矿物学

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Coal samples of Samaleswari open cast coal block (S-OCB) are high ash (A(ad), mean value 35.43%) and low sulphur content (S-t, on dry basis, mean value 0.91% 1%) in quality. The stratigraphic variation of volatile matter and fixed carbon (dry ash-free) reflect a progress of coal metamorphism with depth that accordance to the coal rank variation from lignite to high volatile bituminous in the studied borehole. The younger coal seams have greater detrital minerals (quartz, illite, rutile) influence whereas older coal seams have greater authigenic mineral (kaolinite, dolomite, siderite, apatite) contribution that are possibly due to subsidence and sediment transportation. In S-OCB coal trace elements affinities in-between mineral and organic fraction are identified with statistical hierarchical cluster analysis. The work is further supported by the use of chemical fractionation experiment that reveals the multi mode of occurrence of several environmentally concern and interested trace elements (Sb, As, Be, Cd, Cr, Co, Cu, Pb, Mn, Ni, Zn). Among the analysed trace elements Co, Mn and Zn have major silicate association along with significant carbonate/oxide/monosulfide association. Whereas As, Cd, Cu, Pb and Ni have dominant pyritic association with notable silicate and carbonate/oxide/monosulfide association. The rest three elements (Sb, Be, Cr) have principally organic association with minor silicate and carbonate/oxide/monosulfide association. The stratigraphic variation of organo-mineral matrix content and detrital-authigenic mineral ratio are primarily related to coal rank. Geochemical character of coal also reflects a light towards proper utilisation of S-OCB coal from technical and environmental view point.
机译:Samaleswari开放铸造煤块(S-OCB)的煤样品是高灰分(A(Ad),平均值35.43%)和低硫含量(S-T,在干基础上,平均值0.91%&1%)。挥发性物质和固定碳(无干灰)的地层变异反映了煤变质与深度的进展,根据褐煤对研究的钻孔中的高挥发沥青的煤等级变异。年轻的煤层具有更大的滴乳矿物(石英,伊尔石,金红石)影响,而旧煤层具有更大的Authigenic矿物(高吲哚,白云石,散晶,磷灰石),可能是由于沉降和沉积物运输的贡献。在S-OCB煤痕量元素中,在统计分层聚类分析中鉴定了矿物质和有机部分之间的亲和力。通过使用化学分馏实验进一步支持该作品,该实验揭示了多种环境令人害处和感兴趣的跟踪元素(SB,如,BE,CD,Cr,Co,Cu,Pb,Mn,Ni,Zn) 。在分析的微量元素CO中,Mn和Zn具有主要的硅酸盐关联以及显着的碳酸盐/氧化物/单硫化物缔合。然而,如CD,Cu,Pb和Ni具有与标记硅酸盐和碳酸盐/氧化物/单硫化物关联的显性脱脂缔合。其余的三个元素(Sb,BE,Cr)主要具有与次硅酸盐和碳酸盐/氧化物/单硫化物关联的有机关系。有机矿物基质含量和邪恶 - 作者矿物比的地层变异主要与煤炭等级有关。煤的地球化学特征也反映了来自技术和环境观点的S-OCB煤的适当利用光。

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